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Effect of plasma surface functionalization on preosteoblast cells spreading and adhesion on a biomimetic hydroxyapatite layer formed on a titanium surface

机译:血浆表面功能化对成骨细胞增殖和粘附在钛表面仿生羟基磷灰石层上的影响

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This study examined the plasma surface modification of biomimetic hydroxyapatite (HAp) formed on a titanium (Ti) surface as well as its influence on the behavior of preosteoblast cells. Ti substrates pre-treated with a plasma-polymerized thin film rich in carboxyl groups were subjected to a biomimetic process in a simulated body fluid solution to synthesize the HAp. The HAp layer grown on Ti substrate was then coated with two types of plasma polymerized acrylic acid and allyl amine thin film. The different types of Ti substrates were characterized by attenuated total reflection Fourier transform infrared spec-troscopy, energy dispersive spectroscopy and X-ray diffraction. HAp with a Ca/P ratio from 1.25 to 1.38 was obtained on the Ti substrate and hydrophilic carboxyl (-COOH) and amine (-NH_2) functional groups were introduced to its surface. Scanning electron microscopy was used to observe the surface of the HAp coatings and the morphology of MC3T3-E1 cells. These results showed that the -COOH-modified HAp surfaces promoted the cell spreading synergistically by changing the surface morphology and chemical state.-NH_2 modified HAp had the lowest cell spreading and proliferation compared to HAp and -COOH-modified HAp. These results correspond to fluorescein analysis, which showed many more cell spreading of COOH/HAp/Ti surface compared to HAp and NH_2 modified HAp. A MTT assay was used to evaluate cell proliferation. The results showed that the proliferation of MC3T3-E1 cells increased in the order of COOH/HAp/Ti > HAp/Ti > NH_2/Ti >Ti, corresponding to the effect of cell spreading for 6 days. The change in morphology and the chemical surface properties of the biomaterial via plasma polymerization can affect the behavior of MC3T3-E1 cells.
机译:这项研究检查了钛(Ti)表面上形成的仿生羟基磷灰石(HAp)的血浆表面改性及其对前成骨细胞行为的影响。用富含羧基的等离子聚合薄膜预处理的Ti基板在模拟体液溶液中进行仿生过程,以合成HAp。然后在Ti衬底上生长的HAp层涂覆两种类型的等离子体聚合的丙烯酸和烯丙胺薄膜。通过衰减全反射傅里叶变换红外光谱,能量色散光谱和X射线衍射表征了不同类型的Ti衬底。在Ti基板上获得Ca / P比为1.25至1.38的HAp,并将亲水性羧基(-COOH)和胺(-NH_2)官能团引入其表面。使用扫描电子显微镜观察HAp涂层的表面和MC3T3-E1细胞的形态。这些结果表明,-COOH-修饰的HAp表面通过改变表面形态和化学状态而协同促进细胞扩散。-与NHp和-COOH-修饰的HAp相比,-NH_2修饰的HAp具有最低的细胞扩散和增殖。这些结果与荧光素分析相对应,荧光素分析显示,与HAp和NH_2修饰的HAp相比,COOH / HAp / Ti表面的细胞扩散更多。使用MTT测定法评估细胞增殖。结果表明,MC3T3-E1细胞的增殖以COOH / HAp / Ti> HAp / Ti> NH_2 / Ti> Ti的顺序增加,对应于细胞扩散6天的效果。经由等离子体聚合的生物材料的形态和化学表面性质的变化会影响MC3T3-E1细胞的行为。

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